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Cohort-based multiscale analysis of hemodynamic-driven growth and remodeling of the embryonic pharyngeal arch arteries

机译:基于综合的血流动力驱动生长的多尺度分析和胚胎咽拱动脉的重塑

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摘要

Growth and remodeling of the primitive pharyngeal arch artery (PAA) network into the extracardiac great vessels is poorly understood but a major source of clinically serious malformations. Undisrupted blood flow is required for normal PAA development, yet specific relationships between hemodynamics and remodeling remain largely unknown. Meeting this challenge is hindered by the common reductionist analysis of morphology to single idealized models, where in fact structural morphology varies substantially. Quantitative technical tools that allow tracking of morphological and hemodynamic changes in a population-based setting are essential to advancing our understanding of morphogenesis. Here, we have developed a methodological pipeline from high-resolution nano-computed tomography imaging and live-imaging flow measurements to multiscale pulsatile computational models. We combine experimental-based computational models of multiple PAAs to quantify hemodynamic forces in the rapidly morphing Hamburger Hamilton (HH) stage HH18, HH24 and HH26 embryos. We identify local morphological variation along the PAAs and their association with specific hemodynamic changes. Population-level mechano-morphogenic variability analysis is a powerful strategy for identifying stage-specific regions of well and poorly tolerated morphological and/or hemodynamic variation that may protect or initiate cardiovascular malformations.
机译:原始咽曲拱动脉(PAA)网络进入肢体巨大血管的生长和重塑是狭隘的理解,而是临床严重畸形的主要来源。正常PAA开发所需的未分区血流,血流动力学和重塑之间的特定关系仍然很大程度上是未知的。通过对单一理想模型的常见转化师分析来阻碍这种挑战的阻碍,实际上结构形态的结构形态很大。允许跟踪基于人口的环境的形态学和血液动力学变化的定量技术工具对于推进我们对形态发生的理解至关重要。在这里,我们开发了一种从高分辨率纳米计算断层摄影成像和实时成像流量测量到多尺度脉冲计算模型的方法管道。我们将基于实验的杂志计算模型结合在快速变形的汉堡汉密尔顿(HH)HH18,HH24和HH26胚胎中量化血流动力。我们鉴定沿PaaS的本地形态学变化及其与特定血液动力学变化的关联。人口级机械机形态发生变化分析是识别阶段特异性地区的强大策略,可以保护或引发心血管畸形的井和耐受性的形态和/或血液动力学变异。

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